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- W3151274103 endingPage "106379" @default.
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- W3151274103 abstract "Wet Compression Moulding (WCM) provides large-scale production potential for continuously fibre-reinforced structural components due to simultaneous infiltration and draping during moulding. Due to thickness-dominated infiltration of the laminate, comparatively low cavity pressures are sufficient - a considerable economical advantage. Similar to other Liquid Compression Moulding (LCM) processes, forming and infiltration strongly interact during process. However, the degree of forming is much higher in WCM, which disqualifies a sequential modelling approach. This is demonstrated in this work via experimental characterisation of the interaction between compaction and permeability of a woven fabric and by trials with a transparent double dome geometry, which facilitates an in situ visualization of fluid progression during moulding. In this light, and in contrast to existing form filling approaches, a forming-inspired, three-dimensional process simulation approach is presented containing two fully-coupled macroscopic forming and fluid-submodels. The combined model is successfully benchmarked using experimental double dome trials with transparent tooling." @default.
- W3151274103 created "2021-04-13" @default.
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- W3151274103 date "2021-06-01" @default.
- W3151274103 modified "2023-09-27" @default.
- W3151274103 title "A 3D process simulation model for wet compression moulding" @default.
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- W3151274103 doi "https://doi.org/10.1016/j.compositesa.2021.106379" @default.
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